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Biohydrogenation of C20 polyunsaturated fatty acids by anaerobic bacteria

机译:厌氧菌对C20多不饱和脂肪酸的生物加氢作用

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摘要

The PUFAs include many bioactive lipids. The microbial metabolism of C18 PUFAs is known to produce their bioactive isomers, such as conjugated FAs and hydroxy FAs, but there is little information on that of C20 PUFAs. In this study, we aimed to obtain anaerobic bacteria with the ability to produce novel PUFAs from C20 PUFAs. Through the screening of ∼100 strains of anaerobic bacteria, Clostridium bifermentans JCM 1386 was selected as a strain with the ability to saturate PUFAs during anaerobic cultivation. This strain converted arachidonic acid (cis-5,cis-8,cis-11,cis-14-eicosatetraenoic acid) and EPA (cis-5,cis-8,cis-11,cis-14,cis-17-EPA) into cis-5,cis-8,trans-13-eicosatrienoic acid and cis-5,cis-8,trans-13,cis-17-eicosatetraenoic acid, giving yields of 57% and 67% against the added PUFAs, respectively. This is the first report of the isolation of a bacterium transforming C20 PUFAs into corresponding non-methylene-interrupted FAs. We further investigated the substrate specificity of the biohydrogenation by this strain and revealed that it can convert two cis double bonds at the ω6 and ω9 positions in various C18 and C20 PUFAs into a trans double bond at the ω7 position. This study should serve to open up the development of novel potentially bioactive PUFAs.
机译:PUFA包括许多生物活性脂质。已知C18 PUFA的微生物代谢会产生其生物活性异构体,例如共轭FA和羟基FA,但是关于C20 PUFA的信息很少。在这项研究中,我们旨在获得具有能力从C20 PUFA生产新型PUFA的厌氧细菌。通过筛选约100株厌氧细菌,选择双歧梭状芽胞杆菌JCM 1386作为能够在厌氧培养过程中饱和PUFA的菌株。该菌株转化了花生四烯酸(顺式5,顺式8,顺式11,顺式14-二十碳四烯酸)和EPA(顺式5,顺式8,顺式11,顺式14,顺式17-EPA)。转化为顺式5,顺式8,反式13-二十碳三烯酸和顺式5,顺式8,反式13,顺式 -17-二十碳四烯酸,产率分别为57%和67%分别针对添加的PUFA。这是分离细菌的第一个报告,该细菌将C20 PUFA转化为相应的非亚甲基中断的FA。我们进一步研究了该菌株生物氢化的底物特异性,并揭示了它可以将各种C18和C20 PUFA中ω6和ω9位置的两个 cis 双键转换为 trans 在ω7位的双键。这项研究应有助于开拓新型具有潜在生物活性的PUFAs的开发。

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